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provides access to individual dynamic parameters (cell cycle, fate, motility). - ISMO (UMR 8214), where metallic nanoparticles (Gd, Pt, etc.) are developed to locally amplify the effects of ionizing
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analyses from various 2D/3D cell models. He/She will produce and characterise peptides derived from the extracellular matrix. He/She will analyse the results and contribute to their application. He/she will
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axial conductivity of the plasma, increasing the electric field and the electron-impact ionization (see Fig. 1 for a sketch of the thrusters studied at LPP). This project will be developed in the frame
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-induced lipid remodeling and its impact on cell-to-cell communication in plants Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5667-JULPRA-033/Default.aspx Requirements Research
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Université Polytechnique Hauts-de-France and Universidade de São Paulo. The PhD candidate will be mainly based at LAMIH-CNRS/UPHF in Valenciennes, France, with planned long-term mobility periods at Poli-USP in
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single-cell genomics approaches to analyze the impact on transcriptional responses during organogenesis. He/she will use standard software—and, if necessary, software developed at the RDP laboratory in
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of transit passes (75%) + a sustainable mobility allowance of up to €300 per year • A location accessible by public transportation • Mandatory health insurance, subject to conditions • Access to the CNRS
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to real experimental data: developing tissues, cell migration, microbial dynamics, animal behavior, multicellular systems. Indicative Scientific Plan 4. Methodological development ◦ Theoretical and
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. The doctoral research is part of the TIRIS Scalingup Microcoredeal project, which aims to develop micro-models with a focus on designing and fabricating models that bridge the gap between laboratory settings and
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(Transformation and Transdisciplinarity) • Participate in the implementation of the reflective framework of the IR TRESSE and PC1 of the PEPR TRANSFORM • Articulate the approaches developed in the ZA Hwange with